• Title/Summary/Keyword: Windowless Pig-housing

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Development of Environmental Control Systems for Windowless Pig-housing (II) - Growth Performance of Weaned Piglets and Growing Pigs - (무창돈사의 환경제어 시스템 개발 (II) - 자돈과 육성돈의 사양성적 -)

  • 장동일;장홍희;임영일;박창식;이봉덕;이형석
    • Journal of Biosystems Engineering
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    • v.24 no.5
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    • pp.425-430
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    • 1999
  • Complex environmental control systems were developed, which control properly the pig's environment in windowless pig-housing based on the thermoregulatory behaviors of pigs and concentrations of noxious gases (CO2 and NH3). The this study was conducted to assess the performance of complex environmental control systems by raising weaned piglets and growing pigs under different seasonal conditions. Average daily gain of pigs in the experimental pig-housing was slightly higher than that of pigs in the conventional pig-housing. Average daily gain was not significantly different in winter and spring(P>0.05), but was significantly different in summer(P<0.05). Feed conversion rate of pigs in the experimental pig-housing was smaller than that of pigs in the conventional pig-housing. Feed conversion rate was not significantly different in environment for weaned piglets and growing pigs resulted in the improved daily gain, feed conversion rate, and carcass quality of the finishing pigs. These results showed that the performance of the complex environmental control systems in windowless pig-housing was excellent for weaned piglets and growing pigs.

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Development of Environmental Control Systems for Windowless Pig-housing (I) - Assessment of Control Performance - (무창돈사의 환경제어 시스템 개발 (I) - 제어성능의 평가 -)

  • 장홍희;장동일;임영일
    • Journal of Biosystems Engineering
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    • v.24 no.5
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    • pp.415-424
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    • 1999
  • This study was conducted to assess performances of the developed environmental control systems under various seasons of Korea. In all trials for the environmental control systems, the manure pit ventilation system in the windowless pig-housing with partly slatted floor was used. Consequently, under all seasons of Korea, the complex environmental control systems could comfortably maintain the indoor temperature (14.8~27.2$^{\circ}C$) , concentrations of noxious gases (CO2 gas : 631~1,874ppm, NH3 gas : 0.3~3.2ppm), air velocity (0.11~0.23m/s), air movement, and so on. Therefore, the performances of the complex environmental control systems were evaluated as proper as the intended.

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Characteristics of Temperature Distribution of Pen for Exhaust Fan of Ventilation System (돈사용 환기팬을 위한 돈사 내 온도 분포 특성)

  • Kim, Hyeon-Tae;Kim, Woong
    • Journal of Animal Environmental Science
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    • v.20 no.4
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    • pp.155-160
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    • 2014
  • This study was researched for use by data for the improvement of ventilation system of optimum environmental control systems. The ventilation system for windowless swine housing was installed negative pressure system that circular pipe duct for inlet was installed on the ceiling and axial flow fan for exhaust was installed on the sidewall. The temperatures in the pen was measured using infrared thermography camera and thermocouple with data-logger. The temperature measurement points was selected by infrared thermography camera is alley (G), inlet (A), front-upper (B), front-lower (C), rear-upper (D), rear-lower (E), forward fan (F). The temperature measured at those selected points for temperature distribution was $28^{\circ}C$ that was maintained setting temperature in suitably. The temperature deviations of F point and A~E points in windowless swine housing was less then average $0.5^{\circ}C$. The result of air velocity of measured points was suitable to the breeding of pigs.

Survey and model development of the mechanization for swine farming (양돈농가의 기계화 실태분석 및 모델개발)

  • 이성현;박원규;강창호;오권영
    • Journal of Bio-Environment Control
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    • v.7 no.2
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    • pp.91-108
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    • 1998
  • This study was carried out to survey basic information of swine farms on the machine holdings. facility type. management of manure by farm scale and operation, and then to develop the mechanization model. Manual feeding was common for sows and nursing sows. but automation feeding was normally furnished for weaners. growing pigs and castrated male pigs. Water supplies was completely automated for all of the surveyed swine farms. Fully mechanized and automated system would not be feasible and affordable for the small scale farms breeding less than 500 heads. Because the environmental control for the nursing sows and weaner was important, some swine houses were constructed with the windowless type. However, the furnished rates ranged from 22.2% to 44.4% of the surveyed nursing sow and weaner houses at the farm scales. In the future, a computerized ventilation system would be commended for the efficient use of heat energy and to maintain the desirable temperature of swine buildings. Over-investment for large scale farm and over-crowded pigpen of small farm would cause wasting construction expenses and spreading epidermic diseases Hence, the size of swine building should follow the recommended scale. The fermentation drier was recommended for the manure management. Urine could be recycled or discharged after treating by the activated sludge process.

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